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由斯卑尔脱山羊草 Su1-Ph1 抑制基因诱导的硬粒小麦同源染色体间重组。

Recombination between homoeologous chromosomes induced in durum wheat by the Aegilops speltoides Su1-Ph1 suppressor.

机构信息

Key Laboratory of Plant Stress Biology, State Key Laboratory of Crop Stress Adaptation and Improvement, School of Life Sciences, Henan University, Kaifeng, China.

Department of Plant Sciences, University of California, Davis, CA, 95616, USA.

出版信息

Theor Appl Genet. 2019 Dec;132(12):3265-3276. doi: 10.1007/s00122-019-03423-z. Epub 2019 Sep 16.

Abstract

Su1-Ph1, which we previously introgressed into wheat from Aegilops speltoides, is a potent suppressor of Ph1 and a valuable tool for gene introgression in tetraploid wheat. We previously introgressed Su1-Ph1, a suppressor of the wheat Ph1 gene, from Aegilops speltoides into durum wheat cv Langdon (LDN). Here, we evaluated the utility of the introgressed suppressor for inducing introgression of alien germplasm into durum wheat. We built LDN plants heterozygous for Su1-Ph1 that simultaneously contained a single LDN chromosome 5B and a single Ae. searsii chromosome 5S, which targeted them for recombination. We genotyped 28 BCF and 84 F progeny with the wheat 90-K Illumina single-nucleotide polymorphism assay and detected extensive recombination between the two chromosomes, which we confirmed by non-denaturing fluorescence in situ hybridization (ND-FISH). We constructed BCF and F genetic maps that were 65.31 and 63.71 cM long, respectively. Recombination rates between the 5B and 5S chromosomes were double the expected rate computed from their meiotic pairing, which we attributed to selection against aneuploid gametes. Recombination rate between 5B and 5S was depressed compared to that between 5B chromosomes in the proximal region of the long arm. We integrated ND-FISH signals into the genetic map and constructed a physical map, which we used to map a 172,188,453-bp Ph1 region. Despite the location of the region in a low-recombination region of the 5B chromosome, we detected three crossovers in it. Our data show that Su1-Ph1 is a valuable tool for gene introgression and gene mapping based on recombination between homoeologous chromosomes in wheat.

摘要

我们之前已从节节麦中将 Su1-Ph1 导入小麦,它是 Ph1 基因的有效抑制子,也是四倍体小麦基因渐渗的有用工具。我们之前已从节节麦中将 Su1-Ph1(Ph1 基因的抑制子)导入杜伦小麦(LDN)。在此,我们评估了导入的抑制子在诱导异源种质渐渗到杜伦小麦中的效用。我们构建了 LDN 植株,它们在杂合状态下同时携带单个 LDN 染色体 5B 和单个 Ae. searsii 染色体 5S,这使它们成为重组的目标。我们使用小麦 90-K Illumina 单核苷酸多态性检测试剂盒对 28 个 BCF 和 84 个 F 后代进行了基因型分析,并检测到这两个染色体之间发生了广泛的重组,我们通过非变性荧光原位杂交(ND-FISH)进行了确认。我们构建了 BCF 和 F 遗传图谱,它们分别长 65.31 和 63.71 cM。5B 和 5S 染色体之间的重组率是其减数分裂配对预期率的两倍,我们将其归因于对非整倍体配子的选择。与近着丝粒区 5B 染色体之间的重组率相比,5B 和 5S 之间的重组率受到抑制。我们将 ND-FISH 信号整合到遗传图谱中并构建了物理图谱,用于对 172,188,453-bp Ph1 区域进行作图。尽管该区域位于 5B 染色体的低重组区,但我们在其中检测到三个交叉。我们的数据表明,Su1-Ph1 是基于小麦同源染色体之间重组进行基因渐渗和基因作图的有用工具。

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